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Updated: Jul 17, 2025

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Atom Probe Tomography Analysis of Exsolved Mineral Phases
Published on: October 25, 2019
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A Machine Learning Framework for Quantifying Chemical Segregation and Microstructural Features in Atom Probe
Alaukik Saxena1, Nikita Polin1, Navyanth Kusampudi1
1Max-Planck-Institut für Eisenforschung GmbH, Max-Planck-Straße 1, 40237 Düsseldorf, Germany.
Summary
We developed a machine learning strategy for semi-automated analysis of atom probe tomography (APT) data. This method efficiently identifies material phases and quantifies their composition and microstructure.
Area of Science:
- Materials Science
- Data Science
- Computational Materials Science
Background:
- Atom probe tomography (APT) is crucial for analyzing multi-component materials.
- Quantitative analysis of APT data often requires significant human expertise for defining regions of interest.
- Understanding segregation and microstructure interplay is key in advanced materials.
Purpose of the Study:
- To introduce a computationally efficient machine learning strategy for semi-automated analysis of APT data.
- To identify compositionally distinct domains and quantify their geometric and compositional characteristics.
- To overcome limitations of manual analysis in complex material systems.
Main Methods:
- A multi-stage machine learning pipeline involving data coarse-graining into voxels and composition statistics.
- Clustering in composition space for phase identification, followed by density-based clustering for real-space segmentation.
- Refinement of segmentation using principal component analysis or U-Net-based semantic segmentation for complex morphologies.
Main Results:
- Successful semi-automated identification and segmentation of compositionally distinct phases in a Sm-(Co,Fe)-Zr-Cu alloy.
- Detailed mapping of composition distribution and segregation effects relative to precipitate geometry.
- Demonstration of disentangling intertwined, plate-like precipitate phases.
Conclusions:
- The developed machine learning approach significantly enhances the efficiency and objectivity of APT data analysis.
- This method enables detailed characterization of microstructure-composition relationships in complex materials.
- It provides a robust framework for quantitative analysis without relying solely on voxel compositions.
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